Advances and Prospects for Hydrogel-Forming Microneedles in Transdermal Drug Delivery

透皮 角质层 药物输送 生物医学工程 离子导入 材料科学 电穿孔 药品 纳米技术 医学 药理学 化学 生物化学 病理 基因 放射科
作者
Xiaolin Hou,Jiaqi Li,Ye Hong,Hang Ruan,M. S. Long,Nianping Feng,Yongtai Zhang
出处
期刊:Biomedicines [MDPI AG]
卷期号:11 (8): 2119-2119 被引量:2
标识
DOI:10.3390/biomedicines11082119
摘要

Transdermal drug delivery (TDD) is one of the key approaches for treating diseases, avoiding first-pass effects, reducing systemic adverse drug reactions and improving patient compliance. Microneedling, iontophoresis, electroporation, laser ablation and ultrasound facilitation are often used to improve the efficiency of TDD. Among them, microneedling is a relatively simple and efficient means of drug delivery. Microneedles usually consist of micron-sized needles (50–900 μm in length) in arrays that can successfully penetrate the stratum corneum and deliver drugs in a minimally invasive manner below the stratum corneum without touching the blood vessels and nerves in the dermis, improving patient compliance. Hydrogel-forming microneedles (HFMs) are safe and non-toxic, with no residual matrix material, high drug loading capacity, and controlled drug release, and they are suitable for long-term, multiple drug delivery. This work reviewed the characteristics of the skin structure and TDD, introduced TDD strategies based on HFMs, and summarized the characteristics of HFM TDD systems and the evaluation methods of HFMs as well as the application of HFM drug delivery systems in disease treatment. The HFM drug delivery system has a wide scope for development, but the translation to clinical application still has more challenges.
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